Department of Theoretical and Computational Molecular Science, Institute for Molecular Science and Research Center for Computational Science, 38 Nishigo-Naka, Myodaiji, Okazaki 444-8585, Japan.
J Chem Phys. 2010 Feb 28;132(8):084302. doi: 10.1063/1.3319778.
Valence ionized states of iron pentacarbonyl Fe(CO)(5) and eta(5)-cyclopentadienyl cobalt dicarbonyl Co(eta(5)-C(5)H(5))(CO)(2) have been studied by ultraviolet photoelectron spectroscopy, two-dimensional Penning ionization electron spectroscopy (2D-PIES), and symmetry-adapted cluster-configuration interaction calculations. Theory provided reliable assignments for the complex ionization spectra of these molecules, which have metal-carbonyl bonds. Theoretical ionization energies agreed well with experimental observations and the calculated wave functions could explain the relative intensities of PIES spectra. The collision-energy dependence of partial ionization cross sections (CEDPICS) was obtained by 2D-PIES. To interpret these CEDPICS, the interaction potentials between the molecules and a Li atom were examined in several coordinates by calculations. The relation between the slope of the CEDPICS and the electronic structure of the ionized states, such as molecular symmetry and the spatial distribution of ionizing orbitals, was analyzed. In Fe(CO)(5), an attractive interaction was obtained for the equatorial CO, while the interaction for the axial CO direction was repulsive. For Co(eta(5)-C(5)H(5))(CO)(2), the interaction potential in the direction of both Co-C-O and Co-Cp ring was attractive. These anisotropic interactions and ionizing orbital distributions consistently explain the relative slopes of the CEDPICS.
五羰基合铁 Fe(CO)(5)和η5-环戊二烯基二羰基合钴 Co(η5-C5H5)(CO)2 的价态离子化态已通过紫外光电子能谱、二维彭宁电离电子能谱 (2D-PIES) 和对称性自适应团簇构型相互作用计算进行了研究。理论为这些具有金属羰基键的分子的复杂电离光谱提供了可靠的归属。理论电离能与实验观测吻合较好,计算出的波函数可以解释 PIES 光谱的相对强度。通过 2D-PIES 获得了部分电离截面的碰撞能依赖性 (CEDPICS)。为了解释这些 CEDPICS,通过计算在几个坐标上研究了分子与 Li 原子之间的相互作用势能。分析了 CEDPICS 的斜率与离子化态的电子结构(如分子对称性和离域轨道的空间分布)之间的关系。在 Fe(CO)(5)中,对于赤道 CO 获得了吸引力相互作用,而对于轴向 CO 方向则是排斥力相互作用。对于 Co(η5-C5H5)(CO)2,Co-C-O 和 Co-Cp 环两个方向的相互作用势能均具有吸引力。这些各向异性相互作用和离域轨道分布一致地解释了 CEDPICS 的相对斜率。